Development of a prototype deployable bridge based on origami skill

Development of a prototype deployable bridge based on origami skill
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DOI:
10.1016/j.autcon.2013.01.012
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发表时间:
2011-06
影响因子:
10.3
通讯作者:
I. Ario;M. Nakazawa;Yoshikazu Tanaka;Tanikura Izumi;S. Ono
I. Ario;M. Nakazawa;Yoshikazu Tanaka;Tanikura Izumi;S. Ono
中科院分区:
工程技术1区
文献类型:
--
作者:
I. Ario;M. Nakazawa;Yoshikazu Tanaka;Tanikura Izumi;S. Ono

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近年来,世界上发生了许多自然灾害,如地震,洪水和海啸。我们需要在工程技术方面发展一种新的救援结构,以便在这种灾难中幸存下来。我们必须考虑如何在灾难发生后尽快恢复受损的结构或重建新型救援系统,因为时间是拯救生命的关键。在本文中,我们已经创建了一个最佳的展开桥的基础上折纸折叠结构,通过计算机分析确定。这种基于折纸的计算机分析是一种技能,对于为轻型结构进行新的设计或在力学中实现高刚度是有用的。为了设计一种名为Mobilebridge™的新型应急桥梁,我们最初获得了一种具有新型可展开桥梁的形状优化结构。我们已经认识到,这种剪刀结构是如此有用的移动这个目前的桥梁系统,使一个实验原型后,尽快恢复受损的桥梁。
In recent years, the world has seen many natural disasters such as earthquakes, floods, and tsunamis. We need to develop a new rescue structure in engineering skills to survive such disasters. We have to consider how to recover a damaged structure or how to rebuild a new type of rescue system as soon as possible after a disaster occurs because time is of the essence when trying to save lives. In this paper, we have created an optimum deployable bridge based on an origami folding structure determined by computer analysis. Such computer analysis based on origami is a skill that is useful for making new designs for light structures or achieving high stiffness in mechanics. To design a new emergency bridge called Mobilebridge™ we have originally obtained a shape-optimization structure with a new type of deployable bridge. We have recognised that this scissors structure is so useful to move this present bridge system by making an experimental prototype just after recovering a damaged bridge as soon as possible.